DocumentCode :
7278
Title :
A Novel Ionospheric Oblique-Incidence Sounding Network Consisting of the Ionospheric Oblique Backscatter Sounder and the Parasitic Oblique-Incidence Sounder
Author :
Shu-zhu Shi ; Guo-bin Yang ; Zheng-yu Zhao ; Jing-nan Liu
Author_Institution :
Sch. of Remote Sensing & Inf. Eng., Wuhan Univ., Wuhan, China
Volume :
12
Issue :
10
fYear :
2015
fDate :
Oct. 2015
Firstpage :
2070
Lastpage :
2074
Abstract :
In this letter, a novel ionospheric oblique-incidence sounding network consisting of the ionospheric oblique backscatter sounder and the parasitic oblique-incidence sounder is presented. With the new configuration, the oblique ionogram and the backscatter ionogram can be provided at the same time. Due to the usage of a novel waveform combining the pseudorandom phase coding and the chirp modulation, about 130-dB signal processing gain can be usually obtained to improve the signal-to-noise ratio for the low-power transmission. Furthermore, through choosing different types of pseudorandom sequences for each transmitter, many oblique ionograms that depict the information of different propagation paths can be simultaneously achieved at a single receiver site. In addition, the digital beamforming technique is implemented on the receiving antenna array to simultaneously receive the echoes produced by each transmitter, to achieve a good space isolation to enhance the echo discrimination, and to suppress the strong interferers appearing in the high-frequency band. Details of the system configuration, the ambiguity function of the sounding waveform, and the signal processing algorithm are described. The initial experimental results show that multiple oblique ionograms can be simultaneously obtained at a single receiver site with this sounding network.
Keywords :
antenna arrays; ionosphere; ionospheric techniques; backscatter ionogram; chirp modulation; digital beamforming technique; echo discrimination; high-frequency band; ionospheric oblique backscatter sounder; ionospheric oblique-incidence sounding network; low-power transmission; multiple oblique ionograms; parasitic oblique-incidence sounder; propagation path information; pseudorandom phase coding; pseudorandom sequence; receiving antenna array; signal processing algorithm; signal-to-noise ratio; single receiver site; sounding waveform; Backscatter; Chirp; Delays; Radio transmitters; Receivers; Digital beamforming (DBF); ionogram; ionospheric sounding network; oblique backscatter sounder; oblique-incidence sounder; radar waveform;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
Publisher :
ieee
ISSN :
1545-598X
Type :
jour
DOI :
10.1109/LGRS.2015.2447524
Filename :
7152882
Link To Document :
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